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使用精密切割组织切片评估免疫毒性。

Assessment of immunotoxicity using precision-cut tissue slices.

作者信息

Sewald Katherina, Braun Armin

机构信息

Department of Airway Immunology , Fraunhofer ITEM, Hannover, Germany.

出版信息

Xenobiotica. 2013 Jan;43(1):84-97. doi: 10.3109/00498254.2012.731543. Epub 2012 Nov 16.

Abstract

1.When the immune system encounters incoming infectious agents, this generally leads to immunity. The evoked immune response is usually robust, but can be severely perturbed by potentially harmful environmental agents such as chemicals, pharmaceuticals and allergens. 2.Immunosuppression, hypersensitivity and autoimmunity may occur due to changed immune activity. Evaluation of the immunotoxic potency of agents as part of risk assessment is currently established in vivo with animal models and in vitro with cell lines or primary cells. 3.Although in vivo testing is usually the most relevant situation for many agents, more and more in vitro models are being developed for assessment of immunotoxicity. In this context, hypersensitivity and immunosuppression are considered to be a primary focus for developing in vitro methods. Three-dimensional organotypic tissue models are also part of current research in immunotoxicology. 4.In recent years, there has been a revival of interest in organotypic tissue models. In the context of immunotoxicity testing, precision-cut lung slices in particular have been intensively studied. Therefore, this review is very much focused on pulmonary immunotoxicology. Respiratory hypersensitivity and inflammation are further highlighted aspects of this review. Immunotoxicity assessment currently is of limited use in other tissue models, which are therefore described only briefly within this review.

摘要
  1. 当免疫系统遭遇入侵的感染因子时,通常会产生免疫。诱发的免疫反应通常很强,但可能会受到化学物质、药物和过敏原等潜在有害环境因子的严重干扰。2. 免疫活性改变可能导致免疫抑制、超敏反应和自身免疫。作为风险评估的一部分,目前通过动物模型在体内以及通过细胞系或原代细胞在体外确定因子的免疫毒性效力。3. 尽管体内试验通常是许多因子最相关的情况,但越来越多的体外模型正在被开发用于评估免疫毒性。在此背景下,超敏反应和免疫抑制被认为是开发体外方法的主要重点。三维器官型组织模型也是当前免疫毒理学研究的一部分。4. 近年来,人们对器官型组织模型的兴趣再度兴起。在免疫毒性测试方面,尤其对精密切割肺切片进行了深入研究。因此,本综述非常关注肺部免疫毒理学。呼吸超敏反应和炎症是本综述进一步突出的方面。免疫毒性评估目前在其他组织模型中的应用有限,因此在本综述中仅作简要描述。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f492/3518294/c8a2471b0ead/XEN-43-84-g001.jpg

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